材料科学
拉曼散射
二硫化钼
调制(音乐)
拉曼光谱
数码产品
热传导
光电子学
纳米技术
光致发光
光学
电气工程
复合材料
工程类
物理
哲学
美学
作者
Songwei Liu,Xiaoyue Fan,Yingyi Wen,Pengyu Liu,Yang Liu,Jingfang Pei,Wenchen Yang,Lekai Song,Danmei Pan,Panpan Zhang,Teng Ma,Yue Lin,Gang Wang,Guohua Hu
标识
DOI:10.1002/aelm.202300799
摘要
Abstract Solution‐processed 2D materials hold promise for their scalable applications. However, the random, fragmented nature of the solution‐processed nanoflakes and the poor percolative conduction through their discrete networks limit the performance of the enabled devices. To overcome the problem, conduction modulation of the solution‐processed 2D materials is reported via Stark effect. Using liquid‐phase exfoliated molybdenum disulfide (MoS 2 ) as an example, nonlinear conduction switching with a ratio of >10 5 is demonstrated by the local fields from the interfacial ferroelectric P(VDF‐TrFE). Through density‐functional theory calculations and in situ Raman scattering and photoluminescence spectroscopic analysis, the modulation is understood to arise from a charge redistribution in the solution‐processed MoS 2 . Beyond MoS 2 , the modulation may be shown effective for the other solution‐processed 2D materials and low‐dimensional materials. The modulation can open their electronic device applications, for instance, thin‐film nonlinear electronics and non‐volatile memories.
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